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Influence of the amount of absorbed moisture in nylon fibers on atmospheric pressure plasma processing

机译:尼龙纤维中水分吸收量对常压等离子体处理的影响

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During atmospheric pressure plasma treatment, the existence of moisture in the substrate material may have a potential influence on the treatment effect. In this study, nylon 6 fibers with three different moisture regains (1.23, 5.19 and 9.70%) were treated by atmospheric pressure plasma jet were investigated to improve the wettability and dyeing properties of fibers. The scanning electron microscope showed that at 9.70% moisture regain, the surface layer of the fibers was partially peeled off after plasma treatment. X-ray photoelectron spectroscopy analysis indicated that the plasma-treated fibers had higher oxygen concentration than the control fibers. In dynamic contact angle measurement, the advancing contact angles of all three treated groups decreased about 12 degrees, while the groups with 5.19 and 9.70% moisture regains had lower receding contact angles than the group with 1.23% moisture regain. Using acid dye and dispersive dye, respectively, greater dye uptake was observed in treated fibers whereas the dye depths of the two dyes in nylon fibers were not affected by plasma treatment. The dyeability of the treated fibers with 1.23% moisture regain was a little better than that of the other two treated groups. In addition, no significant difference in single fiber tensile strength was found among control and treated fibers. (C) 2007 Elsevier B.V. All rights reserved.
机译:在大气压等离子体处理过程中,基材中水分的存在可能会对处理效果产生潜在影响。在这项研究中,对具有三种不同回潮率(1.23、5.19和9.70%)的尼龙6纤维进行了大气压等离子射流处理,以提高其润湿性和染色性能。扫描电子显微镜显示在9.70%的回潮率下,等离子处理后纤维的表面层被部分剥离。 X射线光电子能谱分析表明,经等离子体处理的纤维具有比对照纤维更高的氧浓度。在动态接触角测量中,三个处理组的前进接触角均降低了约12度,而含水率分别为5.19和9.70%的组的后退接触角低于含水率为1.23%的组。分别使用酸性染料和分散染料,在处理过的纤维中观察到了更大的染料吸收,而在尼龙纤维中两种染料的染料深度不受等离子体处理的影响。具有1.23%的回潮率的处理过的纤维的染色性比其他两个处理过的组的染色性稍好。另外,在对照纤维和经处理的纤维之间,发现单纤维的抗张强度没有显着差异。 (C)2007 Elsevier B.V.保留所有权利。

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